Robust Controllability in Temporal Constraint Networks under Uncertainty
Temporal constraint networks are embedded in many planning and scheduling problems. In dynamic problems, a fundamental challenge is to decide whether such a network can be executed as uncertainty is revealed over time. Very little work in this domain has been done in the probabilistic context. In th...
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sg-smu-ink.sis_research-13602018-11-26T02:45:31Z Robust Controllability in Temporal Constraint Networks under Uncertainty LAU, Hoong Chuin LI, Jia YAP, Roland H. C. Temporal constraint networks are embedded in many planning and scheduling problems. In dynamic problems, a fundamental challenge is to decide whether such a network can be executed as uncertainty is revealed over time. Very little work in this domain has been done in the probabilistic context. In this paper, we propose a Temporal Constraint Network (TCN) model where durations of uncertain activities are represented by random variables. We wish to know whether such a network is robust controllable, i.e. can be executed dynamically within a given failure probability, and if so, how one might find a feasible schedule as the uncertainty variables are revealed dynamically. We present a computationally tractable and efficient approach to solve this problem. Experimentally, we study how the failure probability is affected by various network properties of the underlying TCN, and the relationship of failure rates between robust and weak controllability. 2006-11-01T08:00:00Z text application/pdf https://ink.library.smu.edu.sg/sis_research/361 info:doi/10.1109/ICTAI.2006.100 https://ink.library.smu.edu.sg/context/sis_research/article/1360/viewcontent/ICTAI06_RobustDynControl.pdf http://creativecommons.org/licenses/by-nc-nd/4.0/ Research Collection School Of Computing and Information Systems eng Institutional Knowledge at Singapore Management University Artificial Intelligence and Robotics Operations Research, Systems Engineering and Industrial Engineering |
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Artificial Intelligence and Robotics Operations Research, Systems Engineering and Industrial Engineering LAU, Hoong Chuin LI, Jia YAP, Roland H. C. Robust Controllability in Temporal Constraint Networks under Uncertainty |
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Temporal constraint networks are embedded in many planning and scheduling problems. In dynamic problems, a fundamental challenge is to decide whether such a network can be executed as uncertainty is revealed over time. Very little work in this domain has been done in the probabilistic context. In this paper, we propose a Temporal Constraint Network (TCN) model where durations of uncertain activities are represented by random variables. We wish to know whether such a network is robust controllable, i.e. can be executed dynamically within a given failure probability, and if so, how one might find a feasible schedule as the uncertainty variables are revealed dynamically. We present a computationally tractable and efficient approach to solve this problem. Experimentally, we study how the failure probability is affected by various network properties of the underlying TCN, and the relationship of failure rates between robust and weak controllability. |
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text |
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LAU, Hoong Chuin LI, Jia YAP, Roland H. C. |
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LAU, Hoong Chuin LI, Jia YAP, Roland H. C. |
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LAU, Hoong Chuin |
title |
Robust Controllability in Temporal Constraint Networks under Uncertainty |
title_short |
Robust Controllability in Temporal Constraint Networks under Uncertainty |
title_full |
Robust Controllability in Temporal Constraint Networks under Uncertainty |
title_fullStr |
Robust Controllability in Temporal Constraint Networks under Uncertainty |
title_full_unstemmed |
Robust Controllability in Temporal Constraint Networks under Uncertainty |
title_sort |
robust controllability in temporal constraint networks under uncertainty |
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Institutional Knowledge at Singapore Management University |
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2006 |
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https://ink.library.smu.edu.sg/sis_research/361 https://ink.library.smu.edu.sg/context/sis_research/article/1360/viewcontent/ICTAI06_RobustDynControl.pdf |
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